blob: 9e14247513c6bbb77ac29e14c1bc80a37bd78dce [file] [log] [blame]
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -07001/* Copyright (c) 2002,2007-2011, Code Aurora Forum. All rights reserved.
2 *
3 * This program is free software; you can redistribute it and/or modify
4 * it under the terms of the GNU General Public License version 2 and
5 * only version 2 as published by the Free Software Foundation.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 */
13#include <linux/uaccess.h>
14
15#include "kgsl.h"
16#include "kgsl_cffdump.h"
17#include "kgsl_sharedmem.h"
18
19#include "z180.h"
20#include "z180_reg.h"
21
22#define DRIVER_VERSION_MAJOR 3
23#define DRIVER_VERSION_MINOR 1
24
25#define Z180_DEVICE(device) \
26 KGSL_CONTAINER_OF(device, struct z180_device, dev)
27
28#define GSL_VGC_INT_MASK \
29 (REG_VGC_IRQSTATUS__MH_MASK | \
30 REG_VGC_IRQSTATUS__G2D_MASK | \
31 REG_VGC_IRQSTATUS__FIFO_MASK)
32
33#define VGV3_NEXTCMD_JUMP 0x01
34
35#define VGV3_NEXTCMD_NEXTCMD_FSHIFT 12
36#define VGV3_NEXTCMD_NEXTCMD_FMASK 0x7
37
38#define VGV3_CONTROL_MARKADD_FSHIFT 0
39#define VGV3_CONTROL_MARKADD_FMASK 0xfff
40
41#define Z180_PACKET_SIZE 15
42#define Z180_MARKER_SIZE 10
43#define Z180_CALL_CMD 0x1000
44#define Z180_MARKER_CMD 0x8000
45#define Z180_STREAM_END_CMD 0x9000
46#define Z180_STREAM_PACKET 0x7C000176
47#define Z180_STREAM_PACKET_CALL 0x7C000275
48#define Z180_PACKET_COUNT 8
49#define Z180_RB_SIZE (Z180_PACKET_SIZE*Z180_PACKET_COUNT \
50 *sizeof(uint32_t))
51
52#define NUMTEXUNITS 4
53#define TEXUNITREGCOUNT 25
54#define VG_REGCOUNT 0x39
55
56#define PACKETSIZE_BEGIN 3
57#define PACKETSIZE_G2DCOLOR 2
58#define PACKETSIZE_TEXUNIT (TEXUNITREGCOUNT * 2)
59#define PACKETSIZE_REG (VG_REGCOUNT * 2)
60#define PACKETSIZE_STATE (PACKETSIZE_TEXUNIT * NUMTEXUNITS + \
61 PACKETSIZE_REG + PACKETSIZE_BEGIN + \
62 PACKETSIZE_G2DCOLOR)
63#define PACKETSIZE_STATESTREAM (ALIGN((PACKETSIZE_STATE * \
64 sizeof(unsigned int)), 32) / \
65 sizeof(unsigned int))
66
67#define Z180_INVALID_CONTEXT UINT_MAX
68
69/* z180 MH arbiter config*/
70#define Z180_CFG_MHARB \
71 (0x10 \
72 | (0 << MH_ARBITER_CONFIG__SAME_PAGE_GRANULARITY__SHIFT) \
73 | (1 << MH_ARBITER_CONFIG__L1_ARB_ENABLE__SHIFT) \
74 | (1 << MH_ARBITER_CONFIG__L1_ARB_HOLD_ENABLE__SHIFT) \
75 | (0 << MH_ARBITER_CONFIG__L2_ARB_CONTROL__SHIFT) \
76 | (1 << MH_ARBITER_CONFIG__PAGE_SIZE__SHIFT) \
77 | (1 << MH_ARBITER_CONFIG__TC_REORDER_ENABLE__SHIFT) \
78 | (1 << MH_ARBITER_CONFIG__TC_ARB_HOLD_ENABLE__SHIFT) \
79 | (0 << MH_ARBITER_CONFIG__IN_FLIGHT_LIMIT_ENABLE__SHIFT) \
80 | (0x8 << MH_ARBITER_CONFIG__IN_FLIGHT_LIMIT__SHIFT) \
81 | (1 << MH_ARBITER_CONFIG__CP_CLNT_ENABLE__SHIFT) \
82 | (1 << MH_ARBITER_CONFIG__VGT_CLNT_ENABLE__SHIFT) \
83 | (1 << MH_ARBITER_CONFIG__TC_CLNT_ENABLE__SHIFT) \
84 | (1 << MH_ARBITER_CONFIG__RB_CLNT_ENABLE__SHIFT) \
85 | (1 << MH_ARBITER_CONFIG__PA_CLNT_ENABLE__SHIFT))
86
87#define Z180_TIMESTAMP_EPSILON 20000
88#define Z180_IDLE_COUNT_MAX 1000000
89
90enum z180_cmdwindow_type {
91 Z180_CMDWINDOW_2D = 0x00000000,
92 Z180_CMDWINDOW_MMU = 0x00000002,
93};
94
95#define Z180_CMDWINDOW_TARGET_MASK 0x000000FF
96#define Z180_CMDWINDOW_ADDR_MASK 0x00FFFF00
97#define Z180_CMDWINDOW_TARGET_SHIFT 0
98#define Z180_CMDWINDOW_ADDR_SHIFT 8
99
100static int z180_start(struct kgsl_device *device, unsigned int init_ram);
101static int z180_stop(struct kgsl_device *device);
102static int z180_wait(struct kgsl_device *device,
103 unsigned int timestamp,
104 unsigned int msecs);
105static void z180_regread(struct kgsl_device *device,
106 unsigned int offsetwords,
107 unsigned int *value);
108static void z180_regwrite(struct kgsl_device *device,
109 unsigned int offsetwords,
110 unsigned int value);
111static void z180_cmdwindow_write(struct kgsl_device *device,
112 unsigned int addr,
113 unsigned int data);
114
115#define Z180_MMU_CONFIG \
116 (0x01 \
117 | (MMU_CONFIG << MH_MMU_CONFIG__RB_W_CLNT_BEHAVIOR__SHIFT) \
118 | (MMU_CONFIG << MH_MMU_CONFIG__CP_W_CLNT_BEHAVIOR__SHIFT) \
119 | (MMU_CONFIG << MH_MMU_CONFIG__CP_R0_CLNT_BEHAVIOR__SHIFT) \
120 | (MMU_CONFIG << MH_MMU_CONFIG__CP_R1_CLNT_BEHAVIOR__SHIFT) \
121 | (MMU_CONFIG << MH_MMU_CONFIG__CP_R2_CLNT_BEHAVIOR__SHIFT) \
122 | (MMU_CONFIG << MH_MMU_CONFIG__CP_R3_CLNT_BEHAVIOR__SHIFT) \
123 | (MMU_CONFIG << MH_MMU_CONFIG__CP_R4_CLNT_BEHAVIOR__SHIFT) \
124 | (MMU_CONFIG << MH_MMU_CONFIG__VGT_R0_CLNT_BEHAVIOR__SHIFT) \
125 | (MMU_CONFIG << MH_MMU_CONFIG__VGT_R1_CLNT_BEHAVIOR__SHIFT) \
126 | (MMU_CONFIG << MH_MMU_CONFIG__TC_R_CLNT_BEHAVIOR__SHIFT) \
127 | (MMU_CONFIG << MH_MMU_CONFIG__PA_W_CLNT_BEHAVIOR__SHIFT))
128
129static const struct kgsl_functable z180_functable;
130
131static struct z180_device device_2d0 = {
132 .dev = {
133 .name = DEVICE_2D0_NAME,
134 .id = KGSL_DEVICE_2D0,
135 .ver_major = DRIVER_VERSION_MAJOR,
136 .ver_minor = DRIVER_VERSION_MINOR,
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600137 .mh = {
138 .mharb = Z180_CFG_MHARB,
139 .mh_intf_cfg1 = 0x00032f07,
140 .mh_intf_cfg2 = 0x004b274f,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700141 /* turn off memory protection unit by setting
142 acceptable physical address range to include
143 all pages. */
144 .mpu_base = 0x00000000,
145 .mpu_range = 0xFFFFF000,
146 },
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600147 .mmu = {
148 .config = Z180_MMU_CONFIG,
149 },
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700150 .pwrctrl = {
151 .regulator_name = "fs_gfx2d0",
152 .irq_name = KGSL_2D0_IRQ,
153 },
154 .mutex = __MUTEX_INITIALIZER(device_2d0.dev.mutex),
155 .state = KGSL_STATE_INIT,
156 .active_cnt = 0,
157 .iomemname = KGSL_2D0_REG_MEMORY,
158 .ftbl = &z180_functable,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700159#ifdef CONFIG_HAS_EARLYSUSPEND
Jordan Crouse9f739212011-07-28 08:37:57 -0600160 .display_off = {
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700161 .level = EARLY_SUSPEND_LEVEL_STOP_DRAWING,
162 .suspend = kgsl_early_suspend_driver,
163 .resume = kgsl_late_resume_driver,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700164 },
Jordan Crouse9f739212011-07-28 08:37:57 -0600165#endif
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700166 },
167};
168
169static struct z180_device device_2d1 = {
170 .dev = {
171 .name = DEVICE_2D1_NAME,
172 .id = KGSL_DEVICE_2D1,
173 .ver_major = DRIVER_VERSION_MAJOR,
174 .ver_minor = DRIVER_VERSION_MINOR,
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600175 .mh = {
176 .mharb = Z180_CFG_MHARB,
177 .mh_intf_cfg1 = 0x00032f07,
178 .mh_intf_cfg2 = 0x004b274f,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700179 /* turn off memory protection unit by setting
180 acceptable physical address range to include
181 all pages. */
182 .mpu_base = 0x00000000,
183 .mpu_range = 0xFFFFF000,
184 },
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600185 .mmu = {
186 .config = Z180_MMU_CONFIG,
187 },
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700188 .pwrctrl = {
189 .regulator_name = "fs_gfx2d1",
190 .irq_name = KGSL_2D1_IRQ,
191 },
192 .mutex = __MUTEX_INITIALIZER(device_2d1.dev.mutex),
193 .state = KGSL_STATE_INIT,
194 .active_cnt = 0,
195 .iomemname = KGSL_2D1_REG_MEMORY,
196 .ftbl = &z180_functable,
197 .display_off = {
198#ifdef CONFIG_HAS_EARLYSUSPEND
199 .level = EARLY_SUSPEND_LEVEL_STOP_DRAWING,
200 .suspend = kgsl_early_suspend_driver,
201 .resume = kgsl_late_resume_driver,
202#endif
203 },
204 },
205};
206
207static irqreturn_t z180_isr(int irq, void *data)
208{
209 irqreturn_t result = IRQ_NONE;
210 unsigned int status;
211 struct kgsl_device *device = (struct kgsl_device *) data;
212 struct z180_device *z180_dev = Z180_DEVICE(device);
213
214 z180_regread(device, ADDR_VGC_IRQSTATUS >> 2, &status);
215
216 if (status & GSL_VGC_INT_MASK) {
217 z180_regwrite(device,
218 ADDR_VGC_IRQSTATUS >> 2, status & GSL_VGC_INT_MASK);
219
220 result = IRQ_HANDLED;
221
222 if (status & REG_VGC_IRQSTATUS__FIFO_MASK)
223 KGSL_DRV_ERR(device, "z180 fifo interrupt\n");
224 if (status & REG_VGC_IRQSTATUS__MH_MASK)
225 kgsl_mh_intrcallback(device);
226 if (status & REG_VGC_IRQSTATUS__G2D_MASK) {
227 int count;
228
229 z180_regread(device,
230 ADDR_VGC_IRQ_ACTIVE_CNT >> 2,
231 &count);
232
233 count >>= 8;
234 count &= 255;
235 z180_dev->timestamp += count;
236
Jordan Crouse1bf80aa2011-10-12 16:57:47 -0600237 queue_work(device->work_queue, &device->ts_expired_ws);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700238 wake_up_interruptible(&device->wait_queue);
239
240 atomic_notifier_call_chain(
241 &(device->ts_notifier_list),
242 device->id, NULL);
243 }
244 }
245
246 if ((device->pwrctrl.nap_allowed == true) &&
247 (device->requested_state == KGSL_STATE_NONE)) {
248 device->requested_state = KGSL_STATE_NAP;
249 queue_work(device->work_queue, &device->idle_check_ws);
250 }
251 mod_timer(&device->idle_timer,
252 jiffies + device->pwrctrl.interval_timeout);
253
254 return result;
255}
256
Jordan Crouse9f739212011-07-28 08:37:57 -0600257static void z180_cleanup_pt(struct kgsl_device *device,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700258 struct kgsl_pagetable *pagetable)
259{
260 struct z180_device *z180_dev = Z180_DEVICE(device);
261
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600262 kgsl_mmu_unmap(pagetable, &device->mmu.setstate_memory);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700263
264 kgsl_mmu_unmap(pagetable, &device->memstore);
265
266 kgsl_mmu_unmap(pagetable, &z180_dev->ringbuffer.cmdbufdesc);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700267}
268
269static int z180_setup_pt(struct kgsl_device *device,
270 struct kgsl_pagetable *pagetable)
271{
272 int result = 0;
273 struct z180_device *z180_dev = Z180_DEVICE(device);
274
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600275 result = kgsl_mmu_map_global(pagetable, &device->mmu.setstate_memory,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700276 GSL_PT_PAGE_RV | GSL_PT_PAGE_WV);
277
278 if (result)
279 goto error;
280
281 result = kgsl_mmu_map_global(pagetable, &device->memstore,
282 GSL_PT_PAGE_RV | GSL_PT_PAGE_WV);
283 if (result)
284 goto error_unmap_dummy;
285
286 result = kgsl_mmu_map_global(pagetable,
287 &z180_dev->ringbuffer.cmdbufdesc,
288 GSL_PT_PAGE_RV);
289 if (result)
290 goto error_unmap_memstore;
291 return result;
292
293error_unmap_dummy:
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600294 kgsl_mmu_unmap(pagetable, &device->mmu.setstate_memory);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700295
296error_unmap_memstore:
297 kgsl_mmu_unmap(pagetable, &device->memstore);
298
299error:
300 return result;
301}
302
303static inline unsigned int rb_offset(unsigned int index)
304{
305 return index*sizeof(unsigned int)*(Z180_PACKET_SIZE);
306}
307
308static void addmarker(struct z180_ringbuffer *rb, unsigned int index)
309{
310 char *ptr = (char *)(rb->cmdbufdesc.hostptr);
311 unsigned int *p = (unsigned int *)(ptr + rb_offset(index));
312
313 *p++ = Z180_STREAM_PACKET;
314 *p++ = (Z180_MARKER_CMD | 5);
315 *p++ = ADDR_VGV3_LAST << 24;
316 *p++ = ADDR_VGV3_LAST << 24;
317 *p++ = ADDR_VGV3_LAST << 24;
318 *p++ = Z180_STREAM_PACKET;
319 *p++ = 5;
320 *p++ = ADDR_VGV3_LAST << 24;
321 *p++ = ADDR_VGV3_LAST << 24;
322 *p++ = ADDR_VGV3_LAST << 24;
323}
324
325static void addcmd(struct z180_ringbuffer *rb, unsigned int index,
326 unsigned int cmd, unsigned int nextcnt)
327{
328 char * ptr = (char *)(rb->cmdbufdesc.hostptr);
329 unsigned int *p = (unsigned int *)(ptr + (rb_offset(index)
330 + (Z180_MARKER_SIZE * sizeof(unsigned int))));
331
332 *p++ = Z180_STREAM_PACKET_CALL;
333 *p++ = cmd;
334 *p++ = Z180_CALL_CMD | nextcnt;
335 *p++ = ADDR_VGV3_LAST << 24;
336 *p++ = ADDR_VGV3_LAST << 24;
337}
338
339static void z180_cmdstream_start(struct kgsl_device *device)
340{
341 struct z180_device *z180_dev = Z180_DEVICE(device);
342 unsigned int cmd = VGV3_NEXTCMD_JUMP << VGV3_NEXTCMD_NEXTCMD_FSHIFT;
343
344 z180_dev->timestamp = 0;
345 z180_dev->current_timestamp = 0;
346
347 addmarker(&z180_dev->ringbuffer, 0);
348
349 z180_cmdwindow_write(device, ADDR_VGV3_MODE, 4);
350
351 z180_cmdwindow_write(device, ADDR_VGV3_NEXTADDR,
352 z180_dev->ringbuffer.cmdbufdesc.gpuaddr);
353
354 z180_cmdwindow_write(device, ADDR_VGV3_NEXTCMD, cmd | 5);
355
356 z180_cmdwindow_write(device, ADDR_VGV3_WRITEADDR,
357 device->memstore.gpuaddr);
358
359 cmd = (int)(((1) & VGV3_CONTROL_MARKADD_FMASK)
360 << VGV3_CONTROL_MARKADD_FSHIFT);
361
362 z180_cmdwindow_write(device, ADDR_VGV3_CONTROL, cmd);
363
364 z180_cmdwindow_write(device, ADDR_VGV3_CONTROL, 0);
365}
366
367static int room_in_rb(struct z180_device *device)
368{
369 int ts_diff;
370
371 ts_diff = device->current_timestamp - device->timestamp;
372
373 return ts_diff < Z180_PACKET_COUNT;
374}
375
376static int z180_idle(struct kgsl_device *device, unsigned int timeout)
377{
378 int status = 0;
379 struct z180_device *z180_dev = Z180_DEVICE(device);
380
381 if (z180_dev->current_timestamp > z180_dev->timestamp)
382 status = z180_wait(device, z180_dev->current_timestamp,
383 timeout);
384
385 if (status)
386 KGSL_DRV_ERR(device, "z180_waittimestamp() timed out\n");
387
388 return status;
389}
390
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700391int
392z180_cmdstream_issueibcmds(struct kgsl_device_private *dev_priv,
393 struct kgsl_context *context,
394 struct kgsl_ibdesc *ibdesc,
395 unsigned int numibs,
396 uint32_t *timestamp,
397 unsigned int ctrl)
398{
Tarun Karra9b92ccd2011-08-19 10:59:57 -0700399 long result = 0;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700400 unsigned int ofs = PACKETSIZE_STATESTREAM * sizeof(unsigned int);
401 unsigned int cnt = 5;
402 unsigned int nextaddr = 0;
403 unsigned int index = 0;
404 unsigned int nextindex;
405 unsigned int nextcnt = Z180_STREAM_END_CMD | 5;
406 struct kgsl_memdesc tmp = {0};
407 unsigned int cmd;
408 struct kgsl_device *device = dev_priv->device;
409 struct kgsl_pagetable *pagetable = dev_priv->process_priv->pagetable;
410 struct z180_device *z180_dev = Z180_DEVICE(device);
411 unsigned int sizedwords;
412
413 if (device->state & KGSL_STATE_HUNG) {
Carter Cooperb90880d2011-10-26 14:38:02 -0600414 result = -EINVAL;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700415 goto error;
416 }
417 if (numibs != 1) {
418 KGSL_DRV_ERR(device, "Invalid number of ibs: %d\n", numibs);
419 result = -EINVAL;
420 goto error;
421 }
422 cmd = ibdesc[0].gpuaddr;
423 sizedwords = ibdesc[0].sizedwords;
424
425 tmp.hostptr = (void *)*timestamp;
426
427 KGSL_CMD_INFO(device, "ctxt %d ibaddr 0x%08x sizedwords %d\n",
428 context->id, cmd, sizedwords);
429 /* context switch */
430 if ((context->id != (int)z180_dev->ringbuffer.prevctx) ||
431 (ctrl & KGSL_CONTEXT_CTX_SWITCH)) {
432 KGSL_CMD_INFO(device, "context switch %d -> %d\n",
433 context->id, z180_dev->ringbuffer.prevctx);
434 kgsl_mmu_setstate(device, pagetable);
435 cnt = PACKETSIZE_STATESTREAM;
436 ofs = 0;
437 }
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600438 kgsl_setstate(device, kgsl_mmu_pt_get_flags(device->mmu.hwpagetable,
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700439 device->id));
440
441 result = wait_event_interruptible_timeout(device->wait_queue,
442 room_in_rb(z180_dev),
443 msecs_to_jiffies(KGSL_TIMEOUT_DEFAULT));
444 if (result < 0) {
445 KGSL_CMD_ERR(device, "wait_event_interruptible_timeout "
Tarun Karra9b92ccd2011-08-19 10:59:57 -0700446 "failed: %ld\n", result);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700447 goto error;
448 }
449 result = 0;
450
451 index = z180_dev->current_timestamp % Z180_PACKET_COUNT;
452 z180_dev->current_timestamp++;
453 nextindex = z180_dev->current_timestamp % Z180_PACKET_COUNT;
454 *timestamp = z180_dev->current_timestamp;
455
456 z180_dev->ringbuffer.prevctx = context->id;
457
458 addcmd(&z180_dev->ringbuffer, index, cmd + ofs, cnt);
459
460 /* Make sure the next ringbuffer entry has a marker */
461 addmarker(&z180_dev->ringbuffer, nextindex);
462
463 nextaddr = z180_dev->ringbuffer.cmdbufdesc.gpuaddr
464 + rb_offset(nextindex);
465
466 tmp.hostptr = (void *)(tmp.hostptr +
467 (sizedwords * sizeof(unsigned int)));
468 tmp.size = 12;
469
470 kgsl_sharedmem_writel(&tmp, 4, nextaddr);
471 kgsl_sharedmem_writel(&tmp, 8, nextcnt);
472
473 /* sync memory before activating the hardware for the new command*/
474 mb();
475
476 cmd = (int)(((2) & VGV3_CONTROL_MARKADD_FMASK)
477 << VGV3_CONTROL_MARKADD_FSHIFT);
478
479 z180_cmdwindow_write(device, ADDR_VGV3_CONTROL, cmd);
480 z180_cmdwindow_write(device, ADDR_VGV3_CONTROL, 0);
481error:
Tarun Karra9b92ccd2011-08-19 10:59:57 -0700482 return (int)result;
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700483}
484
485static int z180_ringbuffer_init(struct kgsl_device *device)
486{
487 struct z180_device *z180_dev = Z180_DEVICE(device);
488 memset(&z180_dev->ringbuffer, 0, sizeof(struct z180_ringbuffer));
489 z180_dev->ringbuffer.prevctx = Z180_INVALID_CONTEXT;
490 return kgsl_allocate_contiguous(&z180_dev->ringbuffer.cmdbufdesc,
491 Z180_RB_SIZE);
492}
493
494static void z180_ringbuffer_close(struct kgsl_device *device)
495{
496 struct z180_device *z180_dev = Z180_DEVICE(device);
497 kgsl_sharedmem_free(&z180_dev->ringbuffer.cmdbufdesc);
498 memset(&z180_dev->ringbuffer, 0, sizeof(struct z180_ringbuffer));
499}
500
501static int __devinit z180_probe(struct platform_device *pdev)
502{
503 int status = -EINVAL;
504 struct kgsl_device *device = NULL;
505 struct z180_device *z180_dev;
506
507 device = (struct kgsl_device *)pdev->id_entry->driver_data;
508 device->parentdev = &pdev->dev;
509
510 z180_dev = Z180_DEVICE(device);
511 spin_lock_init(&z180_dev->cmdwin_lock);
512
513 status = z180_ringbuffer_init(device);
514 if (status != 0)
515 goto error;
516
517 status = kgsl_device_platform_probe(device, z180_isr);
518 if (status)
519 goto error_close_ringbuffer;
520
Lucille Sylvester591ea032011-07-21 16:08:37 -0600521 kgsl_pwrscale_init(device);
522
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700523 return status;
524
525error_close_ringbuffer:
526 z180_ringbuffer_close(device);
527error:
528 device->parentdev = NULL;
529 return status;
530}
531
532static int __devexit z180_remove(struct platform_device *pdev)
533{
534 struct kgsl_device *device = NULL;
535
536 device = (struct kgsl_device *)pdev->id_entry->driver_data;
537
Lucille Sylvester591ea032011-07-21 16:08:37 -0600538 kgsl_pwrscale_close(device);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700539 kgsl_device_platform_remove(device);
540
541 z180_ringbuffer_close(device);
542
543 return 0;
544}
545
546static int z180_start(struct kgsl_device *device, unsigned int init_ram)
547{
548 int status = 0;
549
550 device->state = KGSL_STATE_INIT;
551 device->requested_state = KGSL_STATE_NONE;
552 KGSL_PWR_WARN(device, "state -> INIT, device %d\n", device->id);
553
554 kgsl_pwrctrl_enable(device);
555
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700556 /* Set interrupts to 0 to ensure a good state */
557 z180_regwrite(device, (ADDR_VGC_IRQENABLE >> 2), 0x0);
558
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600559 kgsl_mh_start(device);
560
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700561 status = kgsl_mmu_start(device);
562 if (status)
563 goto error_clk_off;
564
565 z180_cmdstream_start(device);
566
567 mod_timer(&device->idle_timer, jiffies + FIRST_TIMEOUT);
Jeremy Gebbenb46f4152011-10-14 14:27:00 -0600568 kgsl_pwrctrl_irq(device, KGSL_PWRFLAGS_ON);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700569 return 0;
570
571error_clk_off:
572 z180_regwrite(device, (ADDR_VGC_IRQENABLE >> 2), 0);
573 kgsl_pwrctrl_disable(device);
574 return status;
575}
576
577static int z180_stop(struct kgsl_device *device)
578{
579 z180_idle(device, KGSL_TIMEOUT_DEFAULT);
580
Jeremy Gebben1757a852011-07-11 16:04:38 -0600581 del_timer_sync(&device->idle_timer);
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700582
583 kgsl_mmu_stop(device);
584
585 /* Disable the clocks before the power rail. */
586 kgsl_pwrctrl_irq(device, KGSL_PWRFLAGS_OFF);
587
588 kgsl_pwrctrl_disable(device);
589
590 return 0;
591}
592
593static int z180_getproperty(struct kgsl_device *device,
594 enum kgsl_property_type type,
595 void *value,
596 unsigned int sizebytes)
597{
598 int status = -EINVAL;
599
600 switch (type) {
601 case KGSL_PROP_DEVICE_INFO:
602 {
603 struct kgsl_devinfo devinfo;
604
605 if (sizebytes != sizeof(devinfo)) {
606 status = -EINVAL;
607 break;
608 }
609
610 memset(&devinfo, 0, sizeof(devinfo));
611 devinfo.device_id = device->id+1;
612 devinfo.chip_id = 0;
613 devinfo.mmu_enabled = kgsl_mmu_enabled();
614
615 if (copy_to_user(value, &devinfo, sizeof(devinfo)) !=
616 0) {
617 status = -EFAULT;
618 break;
619 }
620 status = 0;
621 }
622 break;
623 case KGSL_PROP_MMU_ENABLE:
624 {
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600625 int mmu_prop = kgsl_mmu_enabled();
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700626 if (sizebytes != sizeof(int)) {
627 status = -EINVAL;
628 break;
629 }
Shubhraprakash Das767fdda2011-08-15 15:49:45 -0600630 if (copy_to_user(value, &mmu_prop, sizeof(mmu_prop))) {
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700631 status = -EFAULT;
632 break;
633 }
634 status = 0;
635 }
636 break;
637
638 default:
639 KGSL_DRV_ERR(device, "invalid property: %d\n", type);
640 status = -EINVAL;
641 }
642 return status;
643}
644
645static unsigned int z180_isidle(struct kgsl_device *device)
646{
647 int status = false;
648 struct z180_device *z180_dev = Z180_DEVICE(device);
649
650 int timestamp = z180_dev->timestamp;
651
652 if (timestamp == z180_dev->current_timestamp)
653 status = true;
654
655 return status;
656}
657
658static int z180_suspend_context(struct kgsl_device *device)
659{
660 struct z180_device *z180_dev = Z180_DEVICE(device);
661
662 z180_dev->ringbuffer.prevctx = Z180_INVALID_CONTEXT;
663
664 return 0;
665}
666
667/* Not all Z180 registers are directly accessible.
668 * The _z180_(read|write)_simple functions below handle the ones that are.
669 */
670static void _z180_regread_simple(struct kgsl_device *device,
671 unsigned int offsetwords,
672 unsigned int *value)
673{
674 unsigned int *reg;
675
676 BUG_ON(offsetwords * sizeof(uint32_t) >= device->regspace.sizebytes);
677
678 reg = (unsigned int *)(device->regspace.mmio_virt_base
679 + (offsetwords << 2));
680
681 /*ensure this read finishes before the next one.
682 * i.e. act like normal readl() */
683 *value = __raw_readl(reg);
684 rmb();
685
686}
687
688static void _z180_regwrite_simple(struct kgsl_device *device,
689 unsigned int offsetwords,
690 unsigned int value)
691{
692 unsigned int *reg;
693
694 BUG_ON(offsetwords*sizeof(uint32_t) >= device->regspace.sizebytes);
695
696 reg = (unsigned int *)(device->regspace.mmio_virt_base
697 + (offsetwords << 2));
698 kgsl_cffdump_regwrite(device->id, offsetwords << 2, value);
699 /*ensure previous writes post before this one,
700 * i.e. act like normal writel() */
701 wmb();
702 __raw_writel(value, reg);
703}
704
705
706/* The MH registers must be accessed through via a 2 step write, (read|write)
707 * process. These registers may be accessed from interrupt context during
708 * the handling of MH or MMU error interrupts. Therefore a spin lock is used
709 * to ensure that the 2 step sequence is not interrupted.
710 */
711static void _z180_regread_mmu(struct kgsl_device *device,
712 unsigned int offsetwords,
713 unsigned int *value)
714{
715 struct z180_device *z180_dev = Z180_DEVICE(device);
716 unsigned long flags;
717
718 spin_lock_irqsave(&z180_dev->cmdwin_lock, flags);
719 _z180_regwrite_simple(device, (ADDR_VGC_MH_READ_ADDR >> 2),
720 offsetwords);
721 _z180_regread_simple(device, (ADDR_VGC_MH_DATA_ADDR >> 2), value);
722 spin_unlock_irqrestore(&z180_dev->cmdwin_lock, flags);
723}
724
725
726static void _z180_regwrite_mmu(struct kgsl_device *device,
727 unsigned int offsetwords,
728 unsigned int value)
729{
730 struct z180_device *z180_dev = Z180_DEVICE(device);
731 unsigned int cmdwinaddr;
732 unsigned long flags;
733
734 cmdwinaddr = ((Z180_CMDWINDOW_MMU << Z180_CMDWINDOW_TARGET_SHIFT) &
735 Z180_CMDWINDOW_TARGET_MASK);
736 cmdwinaddr |= ((offsetwords << Z180_CMDWINDOW_ADDR_SHIFT) &
737 Z180_CMDWINDOW_ADDR_MASK);
738
739 spin_lock_irqsave(&z180_dev->cmdwin_lock, flags);
740 _z180_regwrite_simple(device, ADDR_VGC_MMUCOMMANDSTREAM >> 2,
741 cmdwinaddr);
742 _z180_regwrite_simple(device, ADDR_VGC_MMUCOMMANDSTREAM >> 2, value);
743 spin_unlock_irqrestore(&z180_dev->cmdwin_lock, flags);
744}
745
746/* the rest of the code doesn't want to think about if it is writing mmu
747 * registers or normal registers so handle it here
748 */
749static void z180_regread(struct kgsl_device *device,
750 unsigned int offsetwords,
751 unsigned int *value)
752{
753 if (!in_interrupt())
754 kgsl_pre_hwaccess(device);
755
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600756 if ((offsetwords >= MH_ARBITER_CONFIG &&
757 offsetwords <= MH_AXI_HALT_CONTROL) ||
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700758 (offsetwords >= MH_MMU_CONFIG &&
759 offsetwords <= MH_MMU_MPU_END)) {
760 _z180_regread_mmu(device, offsetwords, value);
761 } else {
762 _z180_regread_simple(device, offsetwords, value);
763 }
764}
765
766static void z180_regwrite(struct kgsl_device *device,
767 unsigned int offsetwords,
768 unsigned int value)
769{
770 if (!in_interrupt())
771 kgsl_pre_hwaccess(device);
772
Jeremy Gebben4e8aada2011-07-12 10:07:47 -0600773 if ((offsetwords >= MH_ARBITER_CONFIG &&
774 offsetwords <= MH_CLNT_INTF_CTRL_CONFIG2) ||
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700775 (offsetwords >= MH_MMU_CONFIG &&
776 offsetwords <= MH_MMU_MPU_END)) {
777 _z180_regwrite_mmu(device, offsetwords, value);
778 } else {
779 _z180_regwrite_simple(device, offsetwords, value);
780 }
781}
782
783static void z180_cmdwindow_write(struct kgsl_device *device,
784 unsigned int addr, unsigned int data)
785{
786 unsigned int cmdwinaddr;
787
788 cmdwinaddr = ((Z180_CMDWINDOW_2D << Z180_CMDWINDOW_TARGET_SHIFT) &
789 Z180_CMDWINDOW_TARGET_MASK);
790 cmdwinaddr |= ((addr << Z180_CMDWINDOW_ADDR_SHIFT) &
791 Z180_CMDWINDOW_ADDR_MASK);
792
793 z180_regwrite(device, ADDR_VGC_COMMANDSTREAM >> 2, cmdwinaddr);
794 z180_regwrite(device, ADDR_VGC_COMMANDSTREAM >> 2, data);
795}
796
797static unsigned int z180_readtimestamp(struct kgsl_device *device,
798 enum kgsl_timestamp_type type)
799{
800 struct z180_device *z180_dev = Z180_DEVICE(device);
801 /* get current EOP timestamp */
802 return z180_dev->timestamp;
803}
804
805static int z180_waittimestamp(struct kgsl_device *device,
806 unsigned int timestamp,
807 unsigned int msecs)
808{
809 int status = -EINVAL;
Ranjhith Kalisamy823c1482011-09-05 20:31:07 +0530810
811 /* Don't wait forever, set a max (10 sec) value for now */
812 if (msecs == -1)
813 msecs = 10 * MSEC_PER_SEC;
814
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700815 mutex_unlock(&device->mutex);
816 status = z180_wait(device, timestamp, msecs);
817 mutex_lock(&device->mutex);
818
819 return status;
820}
821
822static int z180_wait(struct kgsl_device *device,
823 unsigned int timestamp,
824 unsigned int msecs)
825{
826 int status = -EINVAL;
827 long timeout = 0;
828
829 timeout = wait_io_event_interruptible_timeout(
830 device->wait_queue,
831 kgsl_check_timestamp(device, timestamp),
832 msecs_to_jiffies(msecs));
833
834 if (timeout > 0)
835 status = 0;
836 else if (timeout == 0) {
837 status = -ETIMEDOUT;
838 device->state = KGSL_STATE_HUNG;
839 KGSL_PWR_WARN(device, "state -> HUNG, device %d\n", device->id);
840 } else
841 status = timeout;
842
843 return status;
844}
845
846static void
847z180_drawctxt_destroy(struct kgsl_device *device,
848 struct kgsl_context *context)
849{
850 struct z180_device *z180_dev = Z180_DEVICE(device);
851
852 z180_idle(device, KGSL_TIMEOUT_DEFAULT);
853
854 if (z180_dev->ringbuffer.prevctx == context->id) {
855 z180_dev->ringbuffer.prevctx = Z180_INVALID_CONTEXT;
856 device->mmu.hwpagetable = device->mmu.defaultpagetable;
857 kgsl_setstate(device, KGSL_MMUFLAGS_PTUPDATE);
858 }
859}
860
861static void z180_power_stats(struct kgsl_device *device,
862 struct kgsl_power_stats *stats)
863{
Lucille Sylvester591ea032011-07-21 16:08:37 -0600864 struct kgsl_pwrctrl *pwr = &device->pwrctrl;
865
866 if (pwr->time == 0) {
867 pwr->time = ktime_to_us(ktime_get());
868 stats->total_time = 0;
869 stats->busy_time = 0;
870 } else {
871 s64 tmp;
872 tmp = ktime_to_us(ktime_get());
873 stats->total_time = tmp - pwr->time;
874 stats->busy_time = tmp - pwr->time;
875 pwr->time = tmp;
876 }
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700877}
878
879static void z180_irqctrl(struct kgsl_device *device, int state)
880{
881 /* Control interrupts for Z180 and the Z180 MMU */
882
883 if (state) {
884 z180_regwrite(device, (ADDR_VGC_IRQENABLE >> 2), 3);
885 z180_regwrite(device, MH_INTERRUPT_MASK, KGSL_MMU_INT_MASK);
886 } else {
887 z180_regwrite(device, (ADDR_VGC_IRQENABLE >> 2), 0);
888 z180_regwrite(device, MH_INTERRUPT_MASK, 0);
889 }
890}
891
892static const struct kgsl_functable z180_functable = {
893 /* Mandatory functions */
894 .regread = z180_regread,
895 .regwrite = z180_regwrite,
896 .idle = z180_idle,
897 .isidle = z180_isidle,
898 .suspend_context = z180_suspend_context,
899 .start = z180_start,
900 .stop = z180_stop,
901 .getproperty = z180_getproperty,
902 .waittimestamp = z180_waittimestamp,
903 .readtimestamp = z180_readtimestamp,
904 .issueibcmds = z180_cmdstream_issueibcmds,
905 .setup_pt = z180_setup_pt,
906 .cleanup_pt = z180_cleanup_pt,
907 .power_stats = z180_power_stats,
908 .irqctrl = z180_irqctrl,
909 /* Optional functions */
Bryan Huntsman3f2bc4d2011-08-16 17:27:22 -0700910 .drawctxt_create = NULL,
911 .drawctxt_destroy = z180_drawctxt_destroy,
912 .ioctl = NULL,
913};
914
915static struct platform_device_id z180_id_table[] = {
916 { DEVICE_2D0_NAME, (kernel_ulong_t)&device_2d0.dev, },
917 { DEVICE_2D1_NAME, (kernel_ulong_t)&device_2d1.dev, },
918 { },
919};
920MODULE_DEVICE_TABLE(platform, z180_id_table);
921
922static struct platform_driver z180_platform_driver = {
923 .probe = z180_probe,
924 .remove = __devexit_p(z180_remove),
925 .suspend = kgsl_suspend_driver,
926 .resume = kgsl_resume_driver,
927 .id_table = z180_id_table,
928 .driver = {
929 .owner = THIS_MODULE,
930 .name = DEVICE_2D_NAME,
931 .pm = &kgsl_pm_ops,
932 }
933};
934
935static int __init kgsl_2d_init(void)
936{
937 return platform_driver_register(&z180_platform_driver);
938}
939
940static void __exit kgsl_2d_exit(void)
941{
942 platform_driver_unregister(&z180_platform_driver);
943}
944
945module_init(kgsl_2d_init);
946module_exit(kgsl_2d_exit);
947
948MODULE_DESCRIPTION("2D Graphics driver");
949MODULE_VERSION("1.2");
950MODULE_LICENSE("GPL v2");
951MODULE_ALIAS("platform:kgsl_2d");